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Biological data observation apparatus

  • US 6,953,435 B2
  • Filed: 12/09/2002
  • Issued: 10/11/2005
  • Est. Priority Date: 12/10/2001
  • Status: Expired due to Fees
First Claim
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1. A biological data observation apparatus comprising:

  • a measuring unit including at least a photoelectric sensor including a light emitting element for emitting light with a predetermined wavelength onto a blood vessel of a subject and a light detecting element for detecting, as a photoelectric capacity pulse wave, a change in an amount of transmitted or reflected light resulting from the light emitted from said light emitting element;

    a storage area in which blood pressure conversion data, correlating a pulse wave area and a blood pressure value in order that a pulse wave area may be converted to a blood pressure value as an absolute value, is stored, the pulse wave area being obtained by integrating a waveform of the photoelectric volume pulse wave per heartbeat;

    an operational unit calculating the pulse wave area on the basis of the photoelectric volume pulse wave obtained from the subject and further calculating a blood pressure value of the subject on the basis of the calculated pulse wave area and the blood pressure conversion data; and

    a display unit displaying a result of calculation performed by said operational unit, wherein the blood pressure conversion data is calculated on the basis of a measuring artificial human body model including a liquid feeding unit and a pressure measuring section, wherein the liquid feeding unit pressure-feeds blood or an equivalent thereof per heartbeat time obtained while a sampling object having a predetermined form is in a rested state, wherein the liquid feeding unit has a pressure adjustable pressure feed, and a transfer tube through which the blood or equivalent thereof is transferred, wherein the transfer tube has an inner diameter substantially equal to an inner diameter of a blood vessel of the sampling object near which blood pressure is measured by a second photoelectric sensor while the sampling object is in the rested state, wherein the pressure measuring section measures pressure of the blood or equivalent thereof in the transfer tube, wherein the second photoelectric sensor irradiates light with a predetermined wavelength onto the transfer tube for detecting, as a photoelectric volume pulse wave of the transfer tube, a change in an amount of transmitted or reflected light resulting from the irradiated light, wherein the pressure applied to the blood or equivalent thereof during the pressure feed is varied into various values, wherein the photoelectric volume pulse wave of the transfer tube and the pressure applied to the blood or equivalent thereof during the pressure feed are measured by the second photoelectric sensor and the pressure measuring section respectively so that the pulse wave area of the photoelectric volume pulse wave of the transfer tube per heartbeat time and the pressure value of the blood or equivalent thereof both obtained by the second photoelectric sensor and the pressure measuring section respectively are correlated with each other, wherein said measuring unit further includes another photoelectric sensor including a an other single light emitting element and a plurality of light detecting elements which are disposed along the blood vessel of the subject so as to be spaced each one from the other, wherein said operational unit calculates a pulse wave area So on the basis of a photoelectric volume pulse wave obtained from the subject who is temporarily under the measuring reference state prior to measurement, further calculates a blood pressure value Po on the basis of the calculated pulse wave area So and the blood pressure conversion data, and still further calculates a flow velocity Vo in the measuring reference state on the basis of a phase difference between the photoelectric volume pulse waves obtained from said plurality of light detecting elements and distances between said plurality of light detecting elements, and wherein said operational unit calculates a flow velocity Vt in any period on the basis of a phase difference between the photoelectric volume pulse waves obtained from said plurality of light detecting elements and distances between said plurality of light detecting elements, and substitutes the flow velocity values Vo and Vt and the blood density ρ

    for those in the equation Δ

    P=Pt−

    Po=ρ

    /2(Vo2

    Vt2) thereby to calculate a blood pressure variation amount Δ

    P representative of variations in the blood pressure in any period, and calculates the blood pressure value Pt in any period from the calculated blood pressure variation amount Δ

    P and the blood pressure value Po at the measurement reference time.

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